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Remote inspection by the magnetic tomography method (MTM) to prevent the risks imposed by exploitation of Arctic offshore pipelines

机译:通过磁性断层扫描方法(MTM)进行远程检查,以防止北极海上管道利用施加的风险

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摘要

Cold climate areas that provide opportunities for the remote inspection of pipelines include the Barents Sea, the Russian Arctic, the Alaskan Chukchi Sea, the Beaufort Sea and the Canadian Arctic offshore. First, an analysis of several actual projects of contactless diagnostics using the magnetic tomography method of pipelines in Arctic conditions is done. Second, the Risk-Based Inspection methodology for Arctic offshore pipelines is discussed. It involves ensuring pipeline reliability on the basis of data on the technical condition of the metal in actual operating conditions. The magnetic tomography method allows not only to remotely identify areas of anomalies with metal defects, but also to register mechanical stress levels taking into account actual loads. This reduces the risk for the structure to come to the critical state in terms of exceeding local loads. Finally, magnetic tomography technology allows managing risks in cases of local corrosion, stress cracking or loss of stability of underwater pipelines in areas with free spanning. The qualitative indicators of the inspection include the probabilities of identifying, interpreting the degree of danger, missing a dangerous defect. The pipeline diagnostics report provides the parameters of reliability forecasting: the period of incident-free operation, safe working pressure, and pressure coefficient.
机译:为管道远程检查提供机会的冷气候区包括牧人海,俄罗斯北极,阿拉斯加楚科希海,博福特海和加拿大北极海上。首先,完成了使用北极条件下管道磁性断层扫描方法的几个非接触式诊断项目的分析。其次,讨论了北极海上管道的基于风险的检查方法。它涉及基于在实际操作条件下的金属技术状况的数据来确保管道可靠性。磁性断层摄影方法不仅可以远程识别具有金属缺陷的异常区域,还可以考虑到实际负载的机械应力水平。这降低了在超出局部负荷方面缩小到临界状态的结构的风险。最后,磁性断层扫描技术允许在局部腐蚀,压力开裂或水下管道稳定性损失的情况下管理风险。检查的定性指标包括识别,解释危险程度,缺少危险缺陷的概率。管道诊断报告提供了可靠性预测的参数:无入射操作期,安全工作压力和压力系数。

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